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Computational Fluid Dynamics at work - Design and Optimization of Microfluidic Applications

机译:工作中的计算流体动力学 - 微流体应用的设计与优化

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Computational Fluid Dynamics (CFD) is presented as a powerful tool to support design and optimization of microfluidic reactors. This is demonstrated by means of three case studies. First a three-dimensional scaffold for tissue engineering purposes is investigated using a combination of CFD and a simple biological model. The result is a suggestion of an improved geometry design. In the second case study a microfluidic cartridge of a novel automated in vitro fertilization device is presented, where the CFD model has supported the fluidic design of the microfluidic network in which the stem cells are grown. In the last case study a biocatalytic microfluidic reactor design is presented in which the material characteristics of substrates and products of the catalytic reaction can be investigated. As model system the transaminase catalyzed formation of methylbenzylamine (MBA) from acetophenone is investigated and it is demonstrated how the experimental investigation along with the CFD model can be used for the characterisation of the performance of the reactor system.
机译:计算流体动力学(CFD)作为支持微流体反应器的设计和优化的强大工具。这通过三种案例研究证明了这一点。首先,使用CFD和简单的生物模型的组合研究了用于组织工程目的的三维支架。结果是提出改进的几何设计。在第二种情况下,提出了一种新型溶液施肥装置的微流体盒,其中CFD模型支持流体设计的微流体网络,其中生长的微流体网络。在最后一种情况下,研究了一种生物催化微流体反应器设计,其中可以研究底物的材料特性和催化反应的产物。作为模型系统,研究了来自乙酮酮的转氨酶催化形成甲基苄胺(MBA),并证明了如何与CFD模型一起进行实验研究的表征反应器系统的性能。

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